US6231342B1 - Customized dental abutments and methods of preparing or selecting the same - Google Patents

Customized dental abutments and methods of preparing or selecting the same Download PDF

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US6231342B1
US6231342B1 US09/416,011 US41601199A US6231342B1 US 6231342 B1 US6231342 B1 US 6231342B1 US 41601199 A US41601199 A US 41601199A US 6231342 B1 US6231342 B1 US 6231342B1
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Prior art keywords
tooth
abutment
replaced
customized
measurements
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US09/416,011
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Julian Osorio
Andrew Ziegler
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Atlantis Components Inc
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Atlantis Components Inc
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Priority to US09/854,717 priority patent/US20010021498A1/en
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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61CDENTISTRY; APPARATUS OR METHODS FOR ORAL OR DENTAL HYGIENE
    • A61C8/00Means to be fixed to the jaw-bone for consolidating natural teeth or for fixing dental prostheses thereon; Dental implants; Implanting tools
    • A61C8/0048Connecting the upper structure to the implant, e.g. bridging bars
    • A61C8/005Connecting devices for joining an upper structure with an implant member, e.g. spacers
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61CDENTISTRY; APPARATUS OR METHODS FOR ORAL OR DENTAL HYGIENE
    • A61C13/00Dental prostheses; Making same
    • A61C13/0003Making bridge-work, inlays, implants or the like
    • A61C13/0004Computer-assisted sizing or machining of dental prostheses
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61CDENTISTRY; APPARATUS OR METHODS FOR ORAL OR DENTAL HYGIENE
    • A61C8/00Means to be fixed to the jaw-bone for consolidating natural teeth or for fixing dental prostheses thereon; Dental implants; Implanting tools
    • A61C8/0048Connecting the upper structure to the implant, e.g. bridging bars
    • A61C8/0077Connecting the upper structure to the implant, e.g. bridging bars with shape following the gingival surface or the bone surface
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61CDENTISTRY; APPARATUS OR METHODS FOR ORAL OR DENTAL HYGIENE
    • A61C8/00Means to be fixed to the jaw-bone for consolidating natural teeth or for fixing dental prostheses thereon; Dental implants; Implanting tools
    • A61C8/0048Connecting the upper structure to the implant, e.g. bridging bars
    • A61C8/005Connecting devices for joining an upper structure with an implant member, e.g. spacers
    • A61C8/006Connecting devices for joining an upper structure with an implant member, e.g. spacers with polygonal positional means, e.g. hexagonal or octagonal
    • GPHYSICS
    • G16INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS
    • G16HHEALTHCARE INFORMATICS, i.e. INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR THE HANDLING OR PROCESSING OF MEDICAL OR HEALTHCARE DATA
    • G16H20/00ICT specially adapted for therapies or health-improving plans, e.g. for handling prescriptions, for steering therapy or for monitoring patient compliance
    • G16H20/40ICT specially adapted for therapies or health-improving plans, e.g. for handling prescriptions, for steering therapy or for monitoring patient compliance relating to mechanical, radiation or invasive therapies, e.g. surgery, laser therapy, dialysis or acupuncture

Definitions

  • the invention relates to customized dental abutments and methods of preparing or selecting such abutments. More specifically, the invention relates to customized dental abutments fabricated through the use of a computer algorithm into which a series of measurements taken of the site for tooth replacement are entered.
  • a dental restorative system that replaces a single tooth typically includes three components. These are the dental implant fixture, the abutment, and the crown.
  • the dental implant fixture anchors the restorative system to the jawbone.
  • the crown replicates the contour and appearance of the visible portion of the restorative system to match that of the natural dentition.
  • the abutment connects the crown to the dental implant fixture.
  • the abutment also holds the crown in proper alignment relative to the implant fixture, and absorbs the stress of chewing.
  • a customized abutment should also match the size, shape and contour of the original tooth in order to provide the best possible appearance.
  • Standard methods for preparing dental restorative systems require considerable time, labor, and expense. Methods typically require that the patient make between six and ten visits to the dentist's office to complete installation of the restorative system. An oral surgeon or periodontist is required to surgically implant the dental implant fixture into the patient's jawbone. A general dentist or prosthodontist typically performs the measurement and fitting of the abutment and crown, and a technician typically sculpts the abutment and crown.
  • the dental implant fixture is installed in the patient's jawbone.
  • a temporary healing abutment is installed in the implant fixture.
  • a fourth visit is necessary to make an impression of the patient's mouth showing the position of the implant fixture relative to the natural dentition. From this impression, a customized abutment is fabricated.
  • the abutment is installed along with a temporary crown.
  • the progress of gum healing is examined and a final impression of the patient's mouth is made in order to determine if the abutment needs to be further modified.
  • the crown is installed. The number of office visits required increases if the abutment or crown needs to be modified before installation of the final crown.
  • the standard procedure therefore requires a considerable number of visits to the dentist's office for the patient and the labor of up to three different dental professionals. This time and labor adds to the high cost of undergoing a tooth replacement by this method. Accordingly, there remains a need in the art for a methods and materials that will aid in reducing the time, labor and cost of dental implant restorations.
  • the present invention addresses this need by presenting customized dental abutments and methods of preparing or selecting such abutments in a manner which is quicker and less costly than standard techniques.
  • Dental abutments of the present invention are customized to replicate a tooth being replaced.
  • a series of measurements of the tooth site is taken, including measurements of the mesial-distal angle, the facial-lingual angle, the rotational axis of a dental implant fixture implanted at the site of desired tooth replacement, the width, the facial-lingual offset, the mesial-distal offset, and the height from the gumline to the top of a dental implant fixture.
  • a determination of the tooth type e.g., lateral incisor, first bicuspid, etc.
  • Additional measurements may include the height to the occlusal plane and the gingival profile of the tooth being replaced.
  • the dimensions, including the size, position,.orientation and inclination, of the adjacent and opposing teeth may also be made.
  • an abutment is customized by entering measurements into an algorithm that modifies a standard tooth shape for the type of tooth being replaced. The result is a customized abutment that regulates characteristics of the tooth being replaced.
  • Methods of the present invention provide for the preparation of a customized dental abutment in a manner that reduces the amount of time, labor and cost involved in dental restorative system installation. It has now been realized that taking a series of measurements of the site of tooth replacement allows for the quicker and easier development of a customized dental abutment. Accordingly, methods of the present invention allow for the design and construction of a customized dental abutment based on such measurements.
  • a method of the invention comprises implanting a dental fixture into a study cast that was previously made of the patient's mouth.
  • This study cast works as a model of the patient's mouth and shows the site of desired tooth replacement as well as its relation to the surrounding teeth.
  • the dental fixture is preferably placed in the study cast using an impression coping device as described in co-owned, co-pending U.S. Ser. No. 08/851,836, incorporated by reference herein.
  • a preferred method of the invention provides for taking a series of measurements.
  • the measurements include the mesial-distal angle of the site of tooth replacement, the facial-lingual angle of the site, the rotational axis of the fixture, the width of the site, the facial-lingual offset of the site, the mesial-distal offset of the site and the height from the gumline to the top of a dental implant fixture implanted in a patient's mouth.
  • the specific tooth being replaced e.g., lateral incisor, first bicuspid, etc.
  • a customized dental abutment is fabricated.
  • Other measurements may be used to guide the manufacture of a customized dental abutment
  • These measurements include the height of the occlusal plane, the gingival profile, and the dimensions (e.g., height, width, etc.) of the adjacent and opposing teeth.
  • a computer program is used to generate a model of the customized abutment based on these measurements.
  • the computer is programmed to generate a model of the customized abutment based on the particular tooth being replaced and on the measurements and tooth and fixture positions.
  • the computer is pre-programmed to contain a series of standard tooth shapes for each type of tooth.
  • the standard shape for the particular type of tooth being replaced is then modified to conform to the measurements taken.
  • the computer program From this customized model, the computer program generates a file from which a wax prototype of the abutment is generated. From the wax prototype, the abutment is built. The technician need only polish and sterilize the abutment before it can be permanently implanted in the patient's jaw.
  • Another method of the invention relates to selection of a customized dental abutment from an inventory of such abutments.
  • the inventory is preferably a computer inventory.
  • Measurements such as the mesial-distal angle, the facial-lingual angle, the rotational axis of the dental implant fixture, the width, the facial-lingual offset, the mesial-distal offset, and the height from the gumline to the top of a dental implant fixture implanted in a patient's mouth are taken and compared to the inventory to select a model that most closely replicates the actual tooth being replaced.
  • a determination of the type of tooth (e.g., lateral incisor, first bicuspid, etc.) being replaced is made.
  • Additional measurements may include the height to the occlusal plane and the gingival profile of the tooth being replaced, and the dimensions, including the size, position, orientation and inclination, of the adjacent and opposing teeth of the tooth being replaced.
  • Methods and materials of the present invention reduce the number of visits that a patient must make to the dentist office, as well as the time and labor required to complete a dental restoration.
  • the present invention allows for the patient to make as few as three visits to a dentist's office.
  • the first visit would entail making the study cast for use in fabricating the abutment.
  • the dental implant fixture is installed and an impression of the position of the dental implant fixture and its relation to the natural dentition is made.
  • the study cast and impression are then used to fabricate a customized dental abutment, as described above. No further modifications to the abutment are necessary using the above process, so the abutment and crown can be installed at the third and final visit to the dentist's office.
  • the abutment is fabricated to eliminate the need for a healing abutment, as described in co-owned, co-pending U.S. Ser. No. 08/372,323, incorporated by reference herein.
  • FIG. 1 shows a complete dental restorative system including dental implant fixture 10 , customized abutment 12 , and crown 14 .
  • FIG. 2A shows the various faces of an abutment of the invention installed in a dental implant fixture.
  • FIG. 2B shows a facial view of the abutment of FIG. 1 A.
  • FIG. 2C shows a side (mesial or distal) view of the abutment of FIG. 1 A.
  • FIG. 3 shows an impression coping device for use in fabricating customized dental abutments of the invention.
  • FIG. 4A illustrates some of the various measurements taken in order to fabricate a customized dental abutment of the invention.
  • FIG. 4B illustrates some of the various measurements taken in order to fabricate a customized dental abutment of the invention.
  • FIGS. 5A-5H illustrate the various stages undergone in designing a computer model of a standard tooth shape for use in building a customized dental abutment of the invention.
  • a dental restorative system replaces a tooth in a patient's mouth.
  • a dental restorative system is shown in FIG. 1 and comprises a dental implant fixture 10 , which is implanted in the mouth of a patient at the site of desired tooth replacement.
  • the dental implant fixture anchors the other components of the system in proper position and alignment with respect to the natural dentition.
  • the system also includes an abutment 12 , which is installed in the dental implant fixture and over which the crown 14 is affixed.
  • the crown is the visible portion of the restorative system, so it must be contoured and shaped to look like a natural tooth.
  • the underlying abutment should also be fabricated to match the size, shape and contour of the replaced tooth.
  • present invention provides customized dental abutments for use in dental restorative systems and methods of preparing or selecting such abutments.
  • An abutment of the invention is fabricated based on the application of a series of measurements taken at the site of tooth replacement to a standard shape for the type of tooth being replaced.
  • FIG. 2A A preferred abutment of the invention is shown in FIG. 2A.
  • FIG. 2A shows the mesial agent 16 and the distal agent 18 of a typical abutment
  • the mesial agent is the side facing the focial midline and the distal capect is the side facing away from the facial midline.
  • FIG. 2C A side view of an abutment is also shown in FIG. 2C, and this figure represents either a distal or a mesial face.
  • FIG. 2A also shows the facial agent 20 and lingual agent 22 of an abutment.
  • the facial agent of the abutment faces toward the cheeks or lips, and the lingual agent of the abutment faces toward the tongue.
  • a view of the facial agent of an abutment is also shown in FIG. 2 B.
  • FIG. 2A also shows an occlusal plane 24 .
  • the occlusal plane is the surface of the tooth that comes in contact with the surfaces of opposing teeth.
  • the foregoing measurements are made with respect to their orientation to an implanted dental fixture. Such measurements are used to fabricate a customized dental abutment of the invention. Prior to the taking of such measurements, however, some preparative actions should be taken by the dentist, prosthodontist and/or oral surgeon. For example, a study cast of the patient's existing teeth is made. Then, a dental fixture, such as that manufactured by Life Core, is implanted in a bore hole made in a patient's jaw at the site of desired tooth replacement. The implant site is surgically prepared by drilling into the jawbone after the gingival tissue surrounding the point of insertion of the implant has been retracted. An implant fixture may comprise a male hexagonal interface at its exposed end, as well as a hollow bore, which is open from the exposed end of the fixture and extends into the fixture.
  • An impression of the positional and rotational alignment of the dental fixture with respect to the natural dentition must then be taken.
  • the impression ensures that the abutment and crown will have the proper alignment to fit into the natural dentition.
  • An impression is preferably made through the use of an impression coping device as shown in FIG. 3, and as described in co-owned, copending U.S. Ser. No. 08/851,836, incorporated by reference herein.
  • Such an impression coping device comprises a head 17 having a first end 19 that is preferably castellated so that it releasably attaches to a dental implant fixture.
  • the castellated end comprises a plurality of axially extending, radially resilient fingers 21 that deflect as they are friction fitted over a mating surface, such as the male hexagonal interface described above, of a dental implant fixture.
  • the coping device also has a guide stem 23 , which fits into the hollow bore of the dental implant fixture.
  • a coping device as described above is fitted into the dental implant fixture and an impression material, such as, for example, polyether siloxane or polyvinyl siloxane, is poured over the coping device and surrounding teeth. Upon curing, an impression of the natural dentition and their positional and rotational alignment with respect to the dental implant fixture is preserved.
  • a second end of the coping device also contains one or more radially arranged flanges 25 to anchor the impression molding material to the coping device and facilitate its removal from the mouth upon curing.
  • the skilled artisan is aware that other coping devices for making impressions are available and may be used to make an impression as described above.
  • methods of the invention provide for the fabrication of a customized dental abutment from the study cast and impression.
  • a dental implant fixture is first implanted in the study cast at the site of desired tooth replacement.
  • the impression is used to guide the proper rotational and positional alignment of the dental implant fixture in the study cast.
  • the impression coping device containing the attached impression material is attached to an analog fixture, which is then cast in the study cast.
  • the space surrounding the analog fixture is then filled and allowed to cure so that the analog fixture becomes part of the study cast, thus maintaining the proper positional and rotational alignment of the dental fixture with respect to the patient's natural dentition.
  • FIG. 4A illustrates some of the measurements that are taken.
  • the rotational axis of the fixture 10 is shown as 28 .
  • the mesial-distal angle with respect to this axis is shown as 30
  • the facial-lingual angle with respect to this axis is shown as 32 .
  • the height from the gumline to the top of the dental implant fixture is shown as 34 .
  • the width of the gap between the teeth adjacent the tooth to be replaced is shown at 36 .
  • the facial-lingual offset, or the distance from the mid-point of the dental implant fixture to the facial surface of the tooth, is shown at 38 .
  • the mesial-distal offset is shown at 40 .
  • the mesial-distal offset corresponds to one half of the difference in the distances measured from the fixture to each adjacent tooth. For example, if the distance from the dental implant fixture to the first adjacent fixture is x and the distance from the dental implant fixture to the second adjacent tooth is y, the mesial-distal offset is (x ⁇ y)/2.
  • the height to the occlusal plane, or the distance from the gumline to the surface of the tooth that contacts opposing 10 teeth is shown at 42 .
  • Measurements of any or all of these parameters are taken to guide the fabrication of an abutment that closely approximates the size, shape and position of the tooth being replaced.
  • the mesial-distal angle, facial-lingual angle, rotational axis of a dental implant fixture implanted at the site of desired tooth replacement, width, facial-lingual offset, mesial-distal offset and height from the gumline to the top of a dental implant are all measured.
  • a determination of the type of tooth being replaced e.g., lateral incisor, first bicuspid, etc.
  • a customized abutment of the invention may be prepared.
  • other measurements such as the height to the occlusal plane, gingival profile (ie., profile of gumline with respect to the tooth) and dimensions (e.g. width, height to occlusal plane, etc.) of the adjacent and opposing teeth are also taken prior to preparing the customized abutment.
  • a model of a customized dental abutment of the invention is generated by a parametrix solid modeling system computer program, such as SolidWorksTM manufactured by SolidWorks, Inc. (Concord, Mass.).
  • SolidWorksTM manufactured by SolidWorks, Inc. (Concord, Mass.).
  • a series of average measurements for each of the various types of teeth are used to pre-program the computer to generate baseline models.
  • Such average measurements may be found, for example, in Wheeler, Dental Anatomy, Physiology and Occlusion (5th ed. 1974), incorporated by reference herein.
  • a standard shape is generated for each of the various types of teeth.
  • the standard shape represents the average tooth shape for the type of tooth being replaced.
  • the collection of standard shapes represents the inventory from which a Customized abutment is contoured.
  • the shape shown in FIG. 5A is first drawn using the computer program. Points in each plane of a three-dimensional co-ordinate system are added and connected until the shape approximates that shown in FIG. 5 A. The top of this shape is then removed along one plane of the model to give the shape shown in FIG. 5 B. To this shape is then added a frusto-conical shape as shown in FIG. 5 C. The interface between the abutment and the dental implant fixture is then built into the model.
  • the interface may have a hexagonal shape. Further refinements of the interface are shown in FIG. 5 E. Finally, an opening in the abutment model must be made for insertion of the mechanism that secures the abutment to the dental implant fixture. This step is shown in FIG. 5 F.
  • This model may then be modified using the parametrix solid modeling system computer program to add contours and other variations in the shape so that it more closely approximates the contours of a natural tooth as shown in FIGS. 5G and 5H. Other methods of generating a similar model by use of parametrix solid modeling system computer program are possible.
  • the measurements taken at the site of desired tooth replacement and the determination of the type of tooth being replaced are then entered into the modeling program.
  • the program compares the measurements taken of the site to the pre-programmed standard shapes for the type of tooth being replaced. If a particular measurement differs from the average measurement for that tooth, the computer modifies the standard shape to conform to the measurement taken of the site of desired tooth replacement.
  • the computer program also scales the model to conform to the measurements of the site of desired tooth replacement that are entered. In other words, the computer modifies the model in accordance with the measurements that are entered while maintaining proper geometry of the model.
  • the model generated by the computer is then used to create a prototype of the customized abutment.
  • a prototype, preferably made of wax, of the abutment may be created, for example, on a Sanders Prototype, Inc. Model Maker 6 Pro® rapid prototyping machine. From this prototype a cast of the abutment is made. The abutment is then fabricated from this cast, polished and sterilized, resulting in the customized dental abutment of the invention.
  • Methods of the invention also relate to selection of a customized dental abutment from an inventory of abutments.
  • the inventory is preferably a pre-programmed computer inventory.
  • a computer program such as that described above, is used to generate an inventory of abutments of various parameters by creating versions of the type of tooth which vary according to the measurements described above.
  • a model of an abutment can be selected from the inventory.
  • the measurements and tooth type are entered into the computer pre-programmed with the inventory of abutments.
  • the measurements are compared to the available models for that tooth type, and a model that most closely approximates the measurements is selected. This model is then used to generate a prototype from which a customized dental abutment may be cast, as described above.
  • a customized dental abutment so fabricated is then sent to the dental practitioner for installation into the dental implant fixture implanted into the patient's jawbone.
  • the customized dental abutment of the invention is secured in place in the dental implant fixture by, for example, screwing it into place in the dental implant fixture.
  • the use of a healing abutment is not required as described in co-owned, co-pending U.S. Ser. No. 08/372,323, incorporated by reference herein.
  • a crown that approximates the size and color of the natural dentition is attached to the abutment with an adhesive and/or a lateral set screw.
  • a dental technician sculpts the crown with reference to the previously-prepared analog fixture and abutment.
  • the crown is sculpted from, for example, wax or ceramic. The skilled artisan is aware that numerous methods may be used to sculpt a crown from an analog fixture and abutment.

Abstract

A customized dental abutment is provided which replicates a tooth being replaced. The dimensions of the abutment are determined by a computer algorithm that modifies standard tooth type models according to a series of measurements taken of the site of desired tooth replacement. Methods of the invention relate to talkng a series of measurements of the site of desired tooth replacement, determining the type of tooth being replaced, and preparing or selecting a customized dental abutment based on the measurements and determination. The preparation or selection is made by modifying standard measurements for the type of tooth being replaced in conformity with the measurements taken of the site of desired tooth replacement.

Description

RELATED APPLICATIONS DATA
This application is a continuation of and claims priority to U.S. Ser. No. 08/960,046, filed Oct. 29, 1997, now U.S. Pat. No. 5,989,029 and is based on U.S. Provisional Application No. 60/051,957, filed Jul. 8, 1997.
FIELD OF THE INVENTION
The invention relates to customized dental abutments and methods of preparing or selecting such abutments. More specifically, the invention relates to customized dental abutments fabricated through the use of a computer algorithm into which a series of measurements taken of the site for tooth replacement are entered.
BACKGROUND OF THE INVENTION
Dental restorative systems seek to provide cosmetic and functional replacements for missing teeth. A dental restorative system that replaces a single tooth typically includes three components. These are the dental implant fixture, the abutment, and the crown. The dental implant fixture anchors the restorative system to the jawbone. The crown replicates the contour and appearance of the visible portion of the restorative system to match that of the natural dentition. Finally, the abutment connects the crown to the dental implant fixture. The abutment also holds the crown in proper alignment relative to the implant fixture, and absorbs the stress of chewing. A customized abutment should also match the size, shape and contour of the original tooth in order to provide the best possible appearance.
Standard methods for preparing dental restorative systems require considerable time, labor, and expense. Methods typically require that the patient make between six and ten visits to the dentist's office to complete installation of the restorative system. An oral surgeon or periodontist is required to surgically implant the dental implant fixture into the patient's jawbone. A general dentist or prosthodontist typically performs the measurement and fitting of the abutment and crown, and a technician typically sculpts the abutment and crown.
During the first office visit, an impression of the patient's existing teeth is made. During the second visit, the dental implant fixture is installed in the patient's jawbone. At the third visit, a temporary healing abutment is installed in the implant fixture. After healing, a fourth visit is necessary to make an impression of the patient's mouth showing the position of the implant fixture relative to the natural dentition. From this impression, a customized abutment is fabricated. At a fifth visit, the abutment is installed along with a temporary crown. At the sixth visit, the progress of gum healing is examined and a final impression of the patient's mouth is made in order to determine if the abutment needs to be further modified. At the seventh visit, the crown is installed. The number of office visits required increases if the abutment or crown needs to be modified before installation of the final crown.
The standard procedure therefore requires a considerable number of visits to the dentist's office for the patient and the labor of up to three different dental professionals. This time and labor adds to the high cost of undergoing a tooth replacement by this method. Accordingly, there remains a need in the art for a methods and materials that will aid in reducing the time, labor and cost of dental implant restorations. The present invention addresses this need by presenting customized dental abutments and methods of preparing or selecting such abutments in a manner which is quicker and less costly than standard techniques.
SUMMARY OF THE INVENTION
Dental abutments of the present invention are customized to replicate a tooth being replaced. A series of measurements of the tooth site is taken, including measurements of the mesial-distal angle, the facial-lingual angle, the rotational axis of a dental implant fixture implanted at the site of desired tooth replacement, the width, the facial-lingual offset, the mesial-distal offset, and the height from the gumline to the top of a dental implant fixture. In addition to these measurements, a determination of the tooth type (e.g., lateral incisor, first bicuspid, etc.) is made. Additional measurements may include the height to the occlusal plane and the gingival profile of the tooth being replaced. The dimensions, including the size, position,.orientation and inclination, of the adjacent and opposing teeth may also be made.
According to the invention, an abutment is customized by entering measurements into an algorithm that modifies a standard tooth shape for the type of tooth being replaced. The result is a customized abutment that regulates characteristics of the tooth being replaced.
Methods of the present invention provide for the preparation of a customized dental abutment in a manner that reduces the amount of time, labor and cost involved in dental restorative system installation. It has now been realized that taking a series of measurements of the site of tooth replacement allows for the quicker and easier development of a customized dental abutment. Accordingly, methods of the present invention allow for the design and construction of a customized dental abutment based on such measurements.
A method of the invention comprises implanting a dental fixture into a study cast that was previously made of the patient's mouth. This study cast works as a model of the patient's mouth and shows the site of desired tooth replacement as well as its relation to the surrounding teeth. The dental fixture is preferably placed in the study cast using an impression coping device as described in co-owned, co-pending U.S. Ser. No. 08/851,836, incorporated by reference herein.
Once the dental implant fixture is placed in the correct position in the study cast, a preferred method of the invention provides for taking a series of measurements. The measurements include the mesial-distal angle of the site of tooth replacement, the facial-lingual angle of the site, the rotational axis of the fixture, the width of the site, the facial-lingual offset of the site, the mesial-distal offset of the site and the height from the gumline to the top of a dental implant fixture implanted in a patient's mouth. The specific tooth being replaced (e.g., lateral incisor, first bicuspid, etc.) is also determined from its position in the mouth. Based on these measurements a customized dental abutment is fabricated. Other measurements may be used to guide the manufacture of a customized dental abutment These measurements include the height of the occlusal plane, the gingival profile, and the dimensions (e.g., height, width, etc.) of the adjacent and opposing teeth.
In a particularly preferred method of the invention, a computer program is used to generate a model of the customized abutment based on these measurements. The computer is programmed to generate a model of the customized abutment based on the particular tooth being replaced and on the measurements and tooth and fixture positions. The computer is pre-programmed to contain a series of standard tooth shapes for each type of tooth. The standard shape for the particular type of tooth being replaced is then modified to conform to the measurements taken. From this customized model, the computer program generates a file from which a wax prototype of the abutment is generated. From the wax prototype, the abutment is built. The technician need only polish and sterilize the abutment before it can be permanently implanted in the patient's jaw.
Another method of the invention relates to selection of a customized dental abutment from an inventory of such abutments. The inventory is preferably a computer inventory. Measurements such as the mesial-distal angle, the facial-lingual angle, the rotational axis of the dental implant fixture, the width, the facial-lingual offset, the mesial-distal offset, and the height from the gumline to the top of a dental implant fixture implanted in a patient's mouth are taken and compared to the inventory to select a model that most closely replicates the actual tooth being replaced. In addition to these measurements, a determination of the type of tooth (e.g., lateral incisor, first bicuspid, etc.) being replaced is made. Additional measurements may include the height to the occlusal plane and the gingival profile of the tooth being replaced, and the dimensions, including the size, position, orientation and inclination, of the adjacent and opposing teeth of the tooth being replaced.
Methods and materials of the present invention reduce the number of visits that a patient must make to the dentist office, as well as the time and labor required to complete a dental restoration. The present invention allows for the patient to make as few as three visits to a dentist's office. The first visit would entail making the study cast for use in fabricating the abutment. At the second visit, the dental implant fixture is installed and an impression of the position of the dental implant fixture and its relation to the natural dentition is made. The study cast and impression are then used to fabricate a customized dental abutment, as described above. No further modifications to the abutment are necessary using the above process, so the abutment and crown can be installed at the third and final visit to the dentist's office. The abutment is fabricated to eliminate the need for a healing abutment, as described in co-owned, co-pending U.S. Ser. No. 08/372,323, incorporated by reference herein.
The invention will be understood further upon consideration of the following drawings, description and claims.
DESCRIPTION OF THE DRAWINGS
FIG. 1 shows a complete dental restorative system including dental implant fixture 10, customized abutment 12, and crown 14.
FIG. 2A shows the various faces of an abutment of the invention installed in a dental implant fixture.
FIG. 2B shows a facial view of the abutment of FIG. 1A.
FIG. 2C shows a side (mesial or distal) view of the abutment of FIG. 1A.
FIG. 3 shows an impression coping device for use in fabricating customized dental abutments of the invention.
FIG. 4A illustrates some of the various measurements taken in order to fabricate a customized dental abutment of the invention.
FIG. 4B illustrates some of the various measurements taken in order to fabricate a customized dental abutment of the invention.
FIGS. 5A-5H illustrate the various stages undergone in designing a computer model of a standard tooth shape for use in building a customized dental abutment of the invention.
Like reference characters in the respective drawn figures indicate corresponding parts.
DETAILED DESCRIPTION OF THE INVENTION
The present invention relates to methods and materials for use in dental restorative systems. A dental restorative system replaces a tooth in a patient's mouth. A dental restorative system is shown in FIG. 1 and comprises a dental implant fixture 10, which is implanted in the mouth of a patient at the site of desired tooth replacement. The dental implant fixture anchors the other components of the system in proper position and alignment with respect to the natural dentition. The system also includes an abutment 12, which is installed in the dental implant fixture and over which the crown 14 is affixed. The crown is the visible portion of the restorative system, so it must be contoured and shaped to look like a natural tooth. The underlying abutment should also be fabricated to match the size, shape and contour of the replaced tooth.
More specifically, present invention provides customized dental abutments for use in dental restorative systems and methods of preparing or selecting such abutments. An abutment of the invention is fabricated based on the application of a series of measurements taken at the site of tooth replacement to a standard shape for the type of tooth being replaced.
A preferred abutment of the invention is shown in FIG. 2A. A series of measurements is taken with respect to the different faces of the abutment 12. FIG. 2A shows the mesial agent 16 and the distal agent 18 of a typical abutment The mesial agent is the side facing the focial midline and the distal capect is the side facing away from the facial midline. A side view of an abutment is also shown in FIG. 2C, and this figure represents either a distal or a mesial face.
FIG. 2A also shows the facial agent 20 and lingual agent 22 of an abutment. The facial agent of the abutment faces toward the cheeks or lips, and the lingual agent of the abutment faces toward the tongue. A view of the facial agent of an abutment is also shown in FIG. 2B. Finally, FIG. 2A also shows an occlusal plane 24. The occlusal plane is the surface of the tooth that comes in contact with the surfaces of opposing teeth.
In methods of the invention, the foregoing measurements are made with respect to their orientation to an implanted dental fixture. Such measurements are used to fabricate a customized dental abutment of the invention. Prior to the taking of such measurements, however, some preparative actions should be taken by the dentist, prosthodontist and/or oral surgeon. For example, a study cast of the patient's existing teeth is made. Then, a dental fixture, such as that manufactured by Life Core, is implanted in a bore hole made in a patient's jaw at the site of desired tooth replacement. The implant site is surgically prepared by drilling into the jawbone after the gingival tissue surrounding the point of insertion of the implant has been retracted. An implant fixture may comprise a male hexagonal interface at its exposed end, as well as a hollow bore, which is open from the exposed end of the fixture and extends into the fixture.
An impression of the positional and rotational alignment of the dental fixture with respect to the natural dentition must then be taken. The impression ensures that the abutment and crown will have the proper alignment to fit into the natural dentition. An impression is preferably made through the use of an impression coping device as shown in FIG. 3, and as described in co-owned, copending U.S. Ser. No. 08/851,836, incorporated by reference herein. Such an impression coping device comprises a head 17 having a first end 19 that is preferably castellated so that it releasably attaches to a dental implant fixture. The castellated end comprises a plurality of axially extending, radially resilient fingers 21 that deflect as they are friction fitted over a mating surface, such as the male hexagonal interface described above, of a dental implant fixture. The coping device also has a guide stem 23, which fits into the hollow bore of the dental implant fixture.
A coping device as described above is fitted into the dental implant fixture and an impression material, such as, for example, polyether siloxane or polyvinyl siloxane, is poured over the coping device and surrounding teeth. Upon curing, an impression of the natural dentition and their positional and rotational alignment with respect to the dental implant fixture is preserved. A second end of the coping device also contains one or more radially arranged flanges 25 to anchor the impression molding material to the coping device and facilitate its removal from the mouth upon curing. The skilled artisan is aware that other coping devices for making impressions are available and may be used to make an impression as described above.
After the study cast and impression are completed, methods of the invention provide for the fabrication of a customized dental abutment from the study cast and impression. A dental implant fixture is first implanted in the study cast at the site of desired tooth replacement. The impression is used to guide the proper rotational and positional alignment of the dental implant fixture in the study cast. The impression coping device containing the attached impression material is attached to an analog fixture, which is then cast in the study cast. The space surrounding the analog fixture is then filled and allowed to cure so that the analog fixture becomes part of the study cast, thus maintaining the proper positional and rotational alignment of the dental fixture with respect to the patient's natural dentition.
After the analog fixture is properly placed in the study cast, measurements may be made. Measurements may be taken by several means including, but not limited to, a stent, a mold of the teeth, an optical device, or other measuring instrument. FIG. 4A illustrates some of the measurements that are taken. The rotational axis of the fixture 10 is shown as 28. The mesial-distal angle with respect to this axis is shown as 30, and the facial-lingual angle with respect to this axis is shown as 32. The height from the gumline to the top of the dental implant fixture is shown as 34.
Other measurements are shown in FIG. 4B. The width of the gap between the teeth adjacent the tooth to be replaced is shown at 36. The facial-lingual offset, or the distance from the mid-point of the dental implant fixture to the facial surface of the tooth, is shown at 38. The mesial-distal offset is shown at 40. The mesial-distal offset corresponds to one half of the difference in the distances measured from the fixture to each adjacent tooth. For example, if the distance from the dental implant fixture to the first adjacent fixture is x and the distance from the dental implant fixture to the second adjacent tooth is y, the mesial-distal offset is (x−y)/2. Finally, the height to the occlusal plane, or the distance from the gumline to the surface of the tooth that contacts opposing 10 teeth, is shown at 42.
Measurements of any or all of these parameters are taken to guide the fabrication of an abutment that closely approximates the size, shape and position of the tooth being replaced. In an embodiment of the invention, the mesial-distal angle, facial-lingual angle, rotational axis of a dental implant fixture implanted at the site of desired tooth replacement, width, facial-lingual offset, mesial-distal offset and height from the gumline to the top of a dental implant are all measured. A determination of the type of tooth being replaced (e.g., lateral incisor, first bicuspid, etc.) is also made. From these measurements, a customized abutment of the invention may be prepared. In a preferred embodiment, other measurements, such as the height to the occlusal plane, gingival profile (ie., profile of gumline with respect to the tooth) and dimensions (e.g. width, height to occlusal plane, etc.) of the adjacent and opposing teeth are also taken prior to preparing the customized abutment.
In a preferred embodiment, a model of a customized dental abutment of the invention is generated by a parametrix solid modeling system computer program, such as SolidWorks™ manufactured by SolidWorks, Inc. (Concord, Mass.). A series of average measurements for each of the various types of teeth are used to pre-program the computer to generate baseline models. Such average measurements may be found, for example, in Wheeler, Dental Anatomy, Physiology and Occlusion (5th ed. 1974), incorporated by reference herein.
A standard shape is generated for each of the various types of teeth. The standard shape represents the average tooth shape for the type of tooth being replaced. The collection of standard shapes represents the inventory from which a Customized abutment is contoured. For example, to generate a standard shape for a right maxillary lateral incisor the shape shown in FIG. 5A is first drawn using the computer program. Points in each plane of a three-dimensional co-ordinate system are added and connected until the shape approximates that shown in FIG. 5A. The top of this shape is then removed along one plane of the model to give the shape shown in FIG. 5B. To this shape is then added a frusto-conical shape as shown in FIG. 5C. The interface between the abutment and the dental implant fixture is then built into the model. As shown in FIG. 5D, the interface may have a hexagonal shape. Further refinements of the interface are shown in FIG. 5E. Finally, an opening in the abutment model must be made for insertion of the mechanism that secures the abutment to the dental implant fixture. This step is shown in FIG. 5F. This model may then be modified using the parametrix solid modeling system computer program to add contours and other variations in the shape so that it more closely approximates the contours of a natural tooth as shown in FIGS. 5G and 5H. Other methods of generating a similar model by use of parametrix solid modeling system computer program are possible.
The measurements taken at the site of desired tooth replacement and the determination of the type of tooth being replaced are then entered into the modeling program. The program then compares the measurements taken of the site to the pre-programmed standard shapes for the type of tooth being replaced. If a particular measurement differs from the average measurement for that tooth, the computer modifies the standard shape to conform to the measurement taken of the site of desired tooth replacement. The computer program also scales the model to conform to the measurements of the site of desired tooth replacement that are entered. In other words, the computer modifies the model in accordance with the measurements that are entered while maintaining proper geometry of the model.
The model generated by the computer is then used to create a prototype of the customized abutment. A prototype, preferably made of wax, of the abutment may be created, for example, on a Sanders Prototype, Inc. Model Maker 6 Pro® rapid prototyping machine. From this prototype a cast of the abutment is made. The abutment is then fabricated from this cast, polished and sterilized, resulting in the customized dental abutment of the invention.
Methods of the invention also relate to selection of a customized dental abutment from an inventory of abutments. The inventory is preferably a pre-programmed computer inventory. A computer program, such as that described above, is used to generate an inventory of abutments of various parameters by creating versions of the type of tooth which vary according to the measurements described above. By taking measurements of the site of desired tooth replacement and determining the type of tooth to be replaced, a model of an abutment can be selected from the inventory. The measurements and tooth type are entered into the computer pre-programmed with the inventory of abutments. The measurements are compared to the available models for that tooth type, and a model that most closely approximates the measurements is selected. This model is then used to generate a prototype from which a customized dental abutment may be cast, as described above.
A customized dental abutment so fabricated is then sent to the dental practitioner for installation into the dental implant fixture implanted into the patient's jawbone. After the site of the implanted dental fixture is healed, the customized dental abutment of the invention is secured in place in the dental implant fixture by, for example, screwing it into place in the dental implant fixture. The use of a healing abutment is not required as described in co-owned, co-pending U.S. Ser. No. 08/372,323, incorporated by reference herein. A crown that approximates the size and color of the natural dentition is attached to the abutment with an adhesive and/or a lateral set screw. A dental technician sculpts the crown with reference to the previously-prepared analog fixture and abutment. The crown is sculpted from, for example, wax or ceramic. The skilled artisan is aware that numerous methods may be used to sculpt a crown from an analog fixture and abutment.
An dental restoration is therefore performed without the high number of office visits required by standard methods, and without the amount of cost and labor involved in standard methods. Additional aspects and advantages of the invention are apparent upon consideration of the foregoing. Accordingly, the scope of the invention is limited only by the scope of the appended claims.

Claims (7)

What is claimed is:
1. A customized dental abutment affixable to a crown comprising dimensions that are determined by a computer algorithm that modifies pre-programmed standard tooth shapes to generate said customized dental abutment, said dimensions comprising a mesial-distal angle, a facial-lingual angle, a rotational axis of a dental implant fixture implanted at a site of desired tooth replacement, a width, a facial-lingual offset, a mesial-distal offset, and a height from the gumline to the top of a dental implant fixture implanted in a patient's mouth for the specific tooth being replaced as well as for the type of tooth being replaced, a height to the occlusal plane and a gingival profile of said tooth being replaced, and said dimension, including size, position, orientation and inclination, of said adjacent and opposing teeth of said tooth being replaced.
2. The customized dental abutment of claim 1 wherein said tooth being replaced comprises an incisor.
3. The customized dental abutment of claim 1 wherein said tooth being replaced comprises a molar.
4. The customized dental abutment of claim 1 wherein said wherein said tooth being replaced comprises a bicuspid tooth.
5. The customized dental abutment of claim 1 wherein said dimensions are determined from a cast of the patient's mouth.
6. The customized dental abutment of claim 1 wherein said dimension are taken by an optical device.
7. The customized dental abutment of claim 1 wherein said the mesial-distal offset is determined from the formula (x−y)/2, wherein x is the distance from the dental implant fixture to a first adjacent tooth and y is the distance to a second adjacent tooth.
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Cited By (40)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6527554B2 (en) 2001-06-04 2003-03-04 Nobel Biocare Ab Natural implant system
US20040033470A1 (en) * 2002-01-11 2004-02-19 Wohrle Peter S. Dental implant system
EP1430852A2 (en) 2002-12-19 2004-06-23 Biogénie Projectos Ltda. Method for computer controlled machining of customized medico-dental parts and blank for manufacturing prosthetic components
US20040120781A1 (en) * 2002-12-19 2004-06-24 Luca Silvio Castello Branco De Customized instruments and parts for medical-dental applications and method and blank for on-site machining of same
US20040241610A1 (en) * 2003-01-03 2004-12-02 Steve Hurson Dental implant system
US20050008989A1 (en) * 2003-05-19 2005-01-13 Sirona Dental Systems Gmbh Blank-holding means and method of surveying same
US20050014108A1 (en) * 2003-05-16 2005-01-20 Wohrle Peter S. Dental implant system
US20050214714A1 (en) * 2003-05-16 2005-09-29 Wohrle Peter S Dental implant system
US20060019215A1 (en) * 2004-07-20 2006-01-26 Gunter Saliger Equalizing device and method of measurement in teeth restorations
US20060040236A1 (en) * 2004-08-17 2006-02-23 Schmitt Stephen M Design and manufacture of dental implant restorations
US20060106484A1 (en) * 2003-01-02 2006-05-18 Gunter Saliger Method for automatically creating a dental superstructure for joining to an implant
US20060141250A1 (en) * 2004-12-23 2006-06-29 Franz Basler Blank for the production of a dental shaped body and method of producing said shaped body
US20060154203A1 (en) * 2005-01-10 2006-07-13 Emanuelli Silvio F Dental implants having anatomical emergence
US20060199152A1 (en) * 2001-06-04 2006-09-07 Hurson Steven M Natural implant system
US20060292527A1 (en) * 2003-07-07 2006-12-28 Franz Basler Blank for producing dental shaped parts and method for producing the shaped part
US20070154868A1 (en) * 2006-01-05 2007-07-05 Scharlack Ronald S Method and system for designing custom restorations for dental implants
US20070190492A1 (en) * 2006-02-15 2007-08-16 Dental Implant Technologies, Inc. Computer machined dental tooth system and method
US20070190481A1 (en) * 2006-02-15 2007-08-16 Dental Implant Technologies, Inc. Method For Making A Virtual Computer Model of the Jaws
US20070264612A1 (en) * 2004-11-23 2007-11-15 Mount K T Dental implant and method for making and installing same
US20080064008A1 (en) * 2006-09-06 2008-03-13 Dental Implant Technologies, Inc. Methods for the virtual design and computer manufacture of intra oral devices
US20080085489A1 (en) * 2006-10-07 2008-04-10 Dental Implant Technologies, Inc. Surgical guides and methods for positioning artificial teeth and dental implants
US20080228303A1 (en) * 2007-03-13 2008-09-18 Schmitt Stephen M Direct manufacture of dental and medical devices
US20080254413A1 (en) * 2006-10-20 2008-10-16 Degudent Gmbh Process for the production of a head piece of a tooth implant and manufacturing kit for such a process
US20080274440A1 (en) * 2004-03-12 2008-11-06 Ivoclar Vivadent Ag Dental Implant Abutment
US20090111071A1 (en) * 2007-10-25 2009-04-30 Pou Yu Biotechnology Co., Ltd. Method for designing a digital abutment for dental implant
US20110115210A1 (en) * 2008-04-03 2011-05-19 Sirona Dental Systems Gmbh Method for machining a blank having an individual scale-up factor and blank therefor
USRE42391E1 (en) 1998-12-01 2011-05-24 Woehrle Peter S Bioroot endosseous implant
US20110196654A1 (en) * 2010-02-10 2011-08-11 Nobel Biocare Services Ag Dental prosthetics manipulation, selection, and planning
US8348669B1 (en) 2009-11-04 2013-01-08 Bankruptcy Estate Of Voxelogix Corporation Surgical template and method for positioning dental casts and dental implants
US8382477B2 (en) * 2011-04-18 2013-02-26 Terry B. Philibin Healing abutment system for bone contouring
US8636511B2 (en) 2002-11-13 2014-01-28 Biomet 3I, Llc Dental implant system
US8712733B2 (en) 2010-09-17 2014-04-29 Biocad Medical, Inc. Adjusting dental prostheses based on soft tissue
US8949730B2 (en) 2010-07-14 2015-02-03 Biocad Medical, Inc. Library selection in dental prosthesis design
USD783826S1 (en) 2016-02-05 2017-04-11 Silvio Franco Emanuelli Root part for a dental implant
USD783823S1 (en) 2016-02-05 2017-04-11 Silvio Franco Emanuelli Post part for a dental implant
USD783825S1 (en) 2016-02-05 2017-04-11 Silvio Franco Emanuelli Post part for a dental implant
USD783822S1 (en) 2016-02-05 2017-04-11 Silvio Franco Emanuelli Root part for a dental implant
USD783824S1 (en) 2016-02-05 2017-04-11 Silvio Franco Emanuelli Root part for a dental implant
USD785179S1 (en) 2016-02-05 2017-04-25 Silvio Franco Emanuelli Post part for a dental implant
US9925024B2 (en) 2011-06-28 2018-03-27 Biomet 3I, Llc Dental implant and abutment tools

Families Citing this family (55)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6540516B1 (en) 1997-05-05 2003-04-01 Atlantis Components, Inc. Impression coping platform and related methods
US6524106B1 (en) 1997-05-05 2003-02-25 Atlantis Components, Inc. Fastener for attaching to a dental fixture and related methods
US5989029A (en) * 1997-07-08 1999-11-23 Atlantis Components, Inc. Customized dental abutments and methods of preparing or selecting the same
US6280195B1 (en) * 1999-06-11 2001-08-28 Astra Aktiebolag Method of treating a partially or totally edentulous patient
EP2261599B1 (en) 2000-11-08 2013-01-02 Institut Straumann Ag (Dental) Surface mapping and generation
GB0213774D0 (en) * 2002-06-15 2002-07-24 Osseobiotek Ltd Prosthesis
US7029279B2 (en) * 2002-10-07 2006-04-18 Mark Schomann Prosthodontia system
JP4563178B2 (en) * 2002-10-18 2010-10-13 エプシロン レハッテファーワルツング ゲーエム ベーハー Equipment for manufacturing denture parts
SE524252C2 (en) * 2002-11-28 2004-07-13 Nobel Biocare Ab Dental implants designed in one piece
KR20050084293A (en) * 2002-12-13 2005-08-26 스테판 노이마이어 Abutment for a dental implant, dental implant comprising such an abutment, and method for the production of dentures by means of said dental implant
CA2580374C (en) * 2004-09-14 2014-11-18 Oratio B.V. Method of manufacturing and installing a ceramic dental implant with an aesthetic implant abutment
US8430668B2 (en) * 2005-06-17 2013-04-30 Zimmer Dental, Inc. Dental restorative system and components
US8506296B2 (en) * 2005-06-17 2013-08-13 Zimmer Dental, Inc. Dental restorative system and components
US8007279B2 (en) * 2005-06-17 2011-08-30 Zimmer Dental, Inc. Dental restorative system and components
DE15161961T1 (en) 2005-06-30 2015-11-26 Biomet 3I, Llc Process for the preparation of components of a dental implant
US7555403B2 (en) 2005-07-15 2009-06-30 Cadent Ltd. Method for manipulating a dental virtual model, method for creating physical entities based on a dental virtual model thus manipulated, and dental models thus created
US11219511B2 (en) 2005-10-24 2022-01-11 Biomet 3I, Llc Methods for placing an implant analog in a physical model of the patient's mouth
EP1940310B1 (en) * 2005-10-24 2016-08-31 Biomet 3i, LLC Methods for manufacturing dental implant components
US8257083B2 (en) 2005-10-24 2012-09-04 Biomet 3I, Llc Methods for placing an implant analog in a physical model of the patient's mouth
US9539062B2 (en) 2006-10-16 2017-01-10 Natural Dental Implants, Ag Methods of designing and manufacturing customized dental prosthesis for periodontal or osseointegration and related systems
US10426578B2 (en) * 2006-10-16 2019-10-01 Natural Dental Implants, Ag Customized dental prosthesis for periodontal or osseointegration and related systems
DE102006061134A1 (en) * 2006-12-22 2008-06-26 Aepsilon Rechteverwaltungs Gmbh Process for the transport of dental prostheses
US8206153B2 (en) 2007-05-18 2012-06-26 Biomet 3I, Inc. Method for selecting implant components
KR100795645B1 (en) * 2007-08-17 2008-01-17 김정한 Method for manufacturing the one body abutment of implant
US8777612B2 (en) 2007-11-16 2014-07-15 Biomet 3I, Llc Components for use with a surgical guide for dental implant placement
CN101467920B (en) * 2007-12-25 2012-04-11 宝钰生技股份有限公司 Method for designing dental prosthesis supporting tooth
US8651858B2 (en) 2008-04-15 2014-02-18 Biomet 3I, Llc Method of creating an accurate bone and soft-tissue digital dental model
US8011927B2 (en) 2008-04-16 2011-09-06 Biomet 3I, Llc Method for pre-operative visualization of instrumentation used with a surgical guide for dental implant placement
DE102009003650A1 (en) * 2009-03-20 2010-09-30 Degudent Gmbh Method of making an abutment
US8867800B2 (en) * 2009-05-27 2014-10-21 James R. Glidewell Dental Ceramics, Inc. Method of designing and fabricating patient-specific restorations from intra-oral scanning of a digital impression
CN102078224B (en) * 2009-11-26 2012-11-28 东莞宝钰精瓷工业有限公司 Method for designing implant prosthesis
US9934360B2 (en) * 2010-02-10 2018-04-03 Biocad Medical, Inc. Dental data planning
EP2366360A1 (en) * 2010-03-18 2011-09-21 Titus Fischler Connection piece for connecting a dental implant with a dental prosthetic and production of same
GB201009999D0 (en) * 2010-06-15 2010-07-21 Materialise Dental Nv Custom healing cap for dental implantology and method for design and manufacturing thereof
ES2848157T3 (en) 2010-07-19 2021-08-05 Align Technology Inc Procedures and systems for creating and interacting with three-dimensional virtual models
DK2462893T3 (en) 2010-12-07 2014-06-30 Biomet 3I Llc Universal scanning part for use on dental implant and dental implant analogs
KR101234295B1 (en) 2011-03-28 2013-02-18 오스템임플란트 주식회사 Dental implant abutment and fabrication method thereof
CA2833215C (en) 2011-05-16 2018-02-27 Biomet 3I, Llc Temporary abutment with combination of scanning features and provisionalization features
US9452032B2 (en) 2012-01-23 2016-09-27 Biomet 3I, Llc Soft tissue preservation temporary (shell) immediate-implant abutment with biological active surface
US9089382B2 (en) 2012-01-23 2015-07-28 Biomet 3I, Llc Method and apparatus for recording spatial gingival soft tissue relationship to implant placement within alveolar bone for immediate-implant placement
US20140080092A1 (en) 2012-09-14 2014-03-20 Biomet 3I, Llc Temporary dental prosthesis for use in developing final dental prosthesis
KR101406047B1 (en) 2012-12-14 2014-06-11 라파바이오 주식회사 Manufacturing method of customized dental implant
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Citations (36)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4681542A (en) 1986-02-18 1987-07-21 Lloyd Baum Retention system for dental prosthesis
FR2634269A1 (en) 1988-07-12 1990-01-19 Concordia Fluidtechnik Gmbh ELECTROMAGNETIC VALVE
US4955811A (en) 1988-06-23 1990-09-11 Implant Innovations, Inc. Non-rotational single-tooth prosthodontic restoration
US4988297A (en) 1988-03-01 1991-01-29 Implant Innovations, Inc. Alignment corrector for dental implants
US5052929A (en) 1990-03-02 1991-10-01 Seal D Greg Method for constructing a custom abutment for use in association with dental implants
EP0477644A1 (en) 1990-09-28 1992-04-01 Nobelpharma AB Dental-implant system
US5104318A (en) 1990-09-20 1992-04-14 2848-4293 Quebec Inc. Implant assembly for anchoring an artificial tooth
US5106300A (en) 1990-09-26 1992-04-21 Voitik Anton J Dental implant attachment structure and method
US5125841A (en) 1990-01-18 1992-06-30 Nobelpharma Ab Impression top
US5180303A (en) 1988-09-21 1993-01-19 Regents Of The University Of California Retrievable dental prothesis apparatus and method of fabrication
US5193999A (en) 1991-11-14 1993-03-16 Attachments International, Inc. Abutment selector
US5213502A (en) 1992-06-10 1993-05-25 Fereidoun Daftary Interlockable two-piece impression coping for anatomical dental abutment restorative systems
US5273429A (en) 1992-04-03 1993-12-28 Foster-Miller, Inc. Method and apparatus for modeling a dental prosthesis
US5297963A (en) 1993-05-17 1994-03-29 Fereidoun Dafatry Anatomical restoration dental implant system with interlockable elliptical healing cap assembly and matching abutment member
US5334024A (en) 1990-03-21 1994-08-02 Core-Vent Corporation Transfer abutment
US5338196A (en) 1993-04-08 1994-08-16 Implant Innovations, Inc. Dental laboratory components and procedures for anatomical restoration on artificial root fixtures
US5362237A (en) 1991-08-02 1994-11-08 Wellesley Research Associates, Inc. Dental post construction
US5362235A (en) 1993-05-17 1994-11-08 Fereidoun Daftary Anatomical restoration dental implant system with interlockable angled abutment assembly
US5382164A (en) 1993-07-27 1995-01-17 Stern; Sylvan S. Method for making dental restorations and the dental restoration made thereby
US5417568A (en) 1994-02-25 1995-05-23 Giglio; Graziano D. Gingival contoured abutment
US5447435A (en) 1991-09-18 1995-09-05 Brodbeck; Urs Device for the reconstruction of teeth
US5492471A (en) 1994-03-23 1996-02-20 Gary Singer Healing cap system
US5497336A (en) 1991-11-01 1996-03-05 Nobelpharma Ab Scanning device for use in manufacturing implants
US5527182A (en) 1993-12-23 1996-06-18 Adt Advanced Dental Technologies, Ltd. Implant abutment systems, devices, and techniques
US5571015A (en) 1994-09-26 1996-11-05 Siegmund; Ernie Dental replacement mounting system
WO1996034576A1 (en) 1995-05-03 1996-11-07 Astra Aktiebolag Ball impression coping
US5658147A (en) 1995-09-19 1997-08-19 Shopvest, Inc. Working model for prosthodontic preparation of a crown for installation on an implant fixture
US5662476A (en) 1992-06-29 1997-09-02 Nobel Biocare Ab Prosthetic implant restoration method
US5667384A (en) 1994-06-03 1997-09-16 Institut Straumann Ag Device for forming a dental prosthesis and method of manufacturing such a device
US5674073A (en) 1996-01-30 1997-10-07 Nobel Biocare Ab Impression coping
US5674069A (en) 1995-01-13 1997-10-07 Osorio; Julian Customized dental abutment
WO1997037610A1 (en) 1996-04-04 1997-10-16 Julian Osorio Customized dental abutment
US5685715A (en) 1995-03-10 1997-11-11 Beaty; Keith D. Self-indexing transfer impression coping
US5688123A (en) 1994-05-04 1997-11-18 Degussa Aktiengesellschaft Transfer cap for dental implants
US5779480A (en) 1996-05-21 1998-07-14 Degussa Aktiengesellschaft Prosthetic abutment for dental implants
US5989029A (en) * 1997-07-08 1999-11-23 Atlantis Components, Inc. Customized dental abutments and methods of preparing or selecting the same

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2634369A1 (en) * 1988-07-20 1990-01-26 Malek Pierre Dental implant

Patent Citations (40)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4681542A (en) 1986-02-18 1987-07-21 Lloyd Baum Retention system for dental prosthesis
US4988297A (en) 1988-03-01 1991-01-29 Implant Innovations, Inc. Alignment corrector for dental implants
US4955811A (en) 1988-06-23 1990-09-11 Implant Innovations, Inc. Non-rotational single-tooth prosthodontic restoration
FR2634269A1 (en) 1988-07-12 1990-01-19 Concordia Fluidtechnik Gmbh ELECTROMAGNETIC VALVE
US5180303A (en) 1988-09-21 1993-01-19 Regents Of The University Of California Retrievable dental prothesis apparatus and method of fabrication
US5125841A (en) 1990-01-18 1992-06-30 Nobelpharma Ab Impression top
US5052929A (en) 1990-03-02 1991-10-01 Seal D Greg Method for constructing a custom abutment for use in association with dental implants
US5334024A (en) 1990-03-21 1994-08-02 Core-Vent Corporation Transfer abutment
US5104318A (en) 1990-09-20 1992-04-14 2848-4293 Quebec Inc. Implant assembly for anchoring an artificial tooth
US5106300A (en) 1990-09-26 1992-04-21 Voitik Anton J Dental implant attachment structure and method
US5125839A (en) 1990-09-28 1992-06-30 Abraham Ingber Dental implant system
EP0477644A1 (en) 1990-09-28 1992-04-01 Nobelpharma AB Dental-implant system
US5362237A (en) 1991-08-02 1994-11-08 Wellesley Research Associates, Inc. Dental post construction
US5447435A (en) 1991-09-18 1995-09-05 Brodbeck; Urs Device for the reconstruction of teeth
US5497336A (en) 1991-11-01 1996-03-05 Nobelpharma Ab Scanning device for use in manufacturing implants
US5193999A (en) 1991-11-14 1993-03-16 Attachments International, Inc. Abutment selector
US5273429A (en) 1992-04-03 1993-12-28 Foster-Miller, Inc. Method and apparatus for modeling a dental prosthesis
US5213502A (en) 1992-06-10 1993-05-25 Fereidoun Daftary Interlockable two-piece impression coping for anatomical dental abutment restorative systems
US5662476A (en) 1992-06-29 1997-09-02 Nobel Biocare Ab Prosthetic implant restoration method
US5338196A (en) 1993-04-08 1994-08-16 Implant Innovations, Inc. Dental laboratory components and procedures for anatomical restoration on artificial root fixtures
US5419702A (en) 1993-04-08 1995-05-30 Implant Innovations, Inc. Dental restoration on artificial root fixtures
US5476383A (en) 1993-04-08 1995-12-19 Implant Innovations, Inc. Dental restoration on artificial root fixtures
US5362235A (en) 1993-05-17 1994-11-08 Fereidoun Daftary Anatomical restoration dental implant system with interlockable angled abutment assembly
US5297963A (en) 1993-05-17 1994-03-29 Fereidoun Dafatry Anatomical restoration dental implant system with interlockable elliptical healing cap assembly and matching abutment member
US5382164A (en) 1993-07-27 1995-01-17 Stern; Sylvan S. Method for making dental restorations and the dental restoration made thereby
US5527182A (en) 1993-12-23 1996-06-18 Adt Advanced Dental Technologies, Ltd. Implant abutment systems, devices, and techniques
US5417568A (en) 1994-02-25 1995-05-23 Giglio; Graziano D. Gingival contoured abutment
US5651675A (en) 1994-03-23 1997-07-29 Gary Singer Healing cap system
US5492471A (en) 1994-03-23 1996-02-20 Gary Singer Healing cap system
US5688123A (en) 1994-05-04 1997-11-18 Degussa Aktiengesellschaft Transfer cap for dental implants
US5667384A (en) 1994-06-03 1997-09-16 Institut Straumann Ag Device for forming a dental prosthesis and method of manufacturing such a device
US5571015A (en) 1994-09-26 1996-11-05 Siegmund; Ernie Dental replacement mounting system
US5674069A (en) 1995-01-13 1997-10-07 Osorio; Julian Customized dental abutment
US5685715A (en) 1995-03-10 1997-11-11 Beaty; Keith D. Self-indexing transfer impression coping
WO1996034576A1 (en) 1995-05-03 1996-11-07 Astra Aktiebolag Ball impression coping
US5658147A (en) 1995-09-19 1997-08-19 Shopvest, Inc. Working model for prosthodontic preparation of a crown for installation on an implant fixture
US5674073A (en) 1996-01-30 1997-10-07 Nobel Biocare Ab Impression coping
WO1997037610A1 (en) 1996-04-04 1997-10-16 Julian Osorio Customized dental abutment
US5779480A (en) 1996-05-21 1998-07-14 Degussa Aktiengesellschaft Prosthetic abutment for dental implants
US5989029A (en) * 1997-07-08 1999-11-23 Atlantis Components, Inc. Customized dental abutments and methods of preparing or selecting the same

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
Wheeler, Russell C., "Nomenclature and General Considerations," (Dental Anatomy, Physiology and Occlusion, 5th Edition, 1974), pp. 3-23.

Cited By (78)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
USRE42391E1 (en) 1998-12-01 2011-05-24 Woehrle Peter S Bioroot endosseous implant
US20030124489A1 (en) * 2001-06-04 2003-07-03 Hurson Steven M. Natural implant system
US6527554B2 (en) 2001-06-04 2003-03-04 Nobel Biocare Ab Natural implant system
US20060199152A1 (en) * 2001-06-04 2006-09-07 Hurson Steven M Natural implant system
US20040033470A1 (en) * 2002-01-11 2004-02-19 Wohrle Peter S. Dental implant system
US7780447B2 (en) 2002-01-11 2010-08-24 Nobel Biocare Services Ag Dental implant system
US20060194170A1 (en) * 2002-01-11 2006-08-31 Wohrle Peter S Dental implant system
US20060188846A1 (en) * 2002-01-11 2006-08-24 Wohrle Peter S Dental implant system
US9883927B2 (en) 2002-11-13 2018-02-06 Biomet 3I, Llc Dental implant system
US9931182B2 (en) 2002-11-13 2018-04-03 Biomet 3I, Llc Dental implant system
US9549793B2 (en) 2002-11-13 2017-01-24 Biomet 3I, Llc Dental implant system
US8636511B2 (en) 2002-11-13 2014-01-28 Biomet 3I, Llc Dental implant system
EP1430852A2 (en) 2002-12-19 2004-06-23 Biogénie Projectos Ltda. Method for computer controlled machining of customized medico-dental parts and blank for manufacturing prosthetic components
US20040120781A1 (en) * 2002-12-19 2004-06-24 Luca Silvio Castello Branco De Customized instruments and parts for medical-dental applications and method and blank for on-site machining of same
US8480396B2 (en) 2003-01-02 2013-07-09 Sirona Dental Systems Gmbh Method for automatically fabricating a dental superstructure for attachment to an implant
US20110125305A1 (en) * 2003-01-02 2011-05-26 Sirona Dental Systems Gmbh Method for automatically fabricating a dental superstructure for attachment to an implant
US7901209B2 (en) 2003-01-02 2011-03-08 Sirona Dental Systems Gmbh Method for automatically creating a dental superstructure for joining to an implant
US8167617B2 (en) 2003-01-02 2012-05-01 Sirona Dental Systems Gmbh Method for automatically fabricating a dental superstructure for attachment to an implant
US20060106484A1 (en) * 2003-01-02 2006-05-18 Gunter Saliger Method for automatically creating a dental superstructure for joining to an implant
US20060204928A1 (en) * 2003-01-03 2006-09-14 Steve Hurson Dental implant system
US20040241610A1 (en) * 2003-01-03 2004-12-02 Steve Hurson Dental implant system
US20050214714A1 (en) * 2003-05-16 2005-09-29 Wohrle Peter S Dental implant system
US7708559B2 (en) 2003-05-16 2010-05-04 Nobel Biocare Services Ag Dental implant system
US20050014108A1 (en) * 2003-05-16 2005-01-20 Wohrle Peter S. Dental implant system
US8186998B2 (en) 2003-05-19 2012-05-29 Sirona Dental Systems Gmbh Blank-holding means and method of surveying same
US20050008989A1 (en) * 2003-05-19 2005-01-13 Sirona Dental Systems Gmbh Blank-holding means and method of surveying same
US8057912B2 (en) 2003-07-07 2011-11-15 Sirona Dental Systems Gmbh Blank for producing dental shaped parts and method for producing the shaped part
US20060292527A1 (en) * 2003-07-07 2006-12-28 Franz Basler Blank for producing dental shaped parts and method for producing the shaped part
US8893387B2 (en) 2003-07-07 2014-11-25 Sirona Dental Systems Gmbh Method for producing a dental shaped part
US20080274440A1 (en) * 2004-03-12 2008-11-06 Ivoclar Vivadent Ag Dental Implant Abutment
US8936469B2 (en) 2004-03-12 2015-01-20 Ivoclar Vivadent Ag Process for fabrication of a dental implant restoration system
US8371851B2 (en) 2004-03-12 2013-02-12 Ivoclar Vivadent Ag Dental implant abutment
US20060019215A1 (en) * 2004-07-20 2006-01-26 Gunter Saliger Equalizing device and method of measurement in teeth restorations
US20080206714A1 (en) * 2004-08-17 2008-08-28 Schmitt Stephen M Design and manufacture of dental implant restorations
US7322824B2 (en) 2004-08-17 2008-01-29 Schmitt Stephen M Design and manufacture of dental implant restorations
US20060040236A1 (en) * 2004-08-17 2006-02-23 Schmitt Stephen M Design and manufacture of dental implant restorations
US20080020343A1 (en) * 2004-11-23 2008-01-24 Mount K T Dental implant and method for making and installing same
US20070264612A1 (en) * 2004-11-23 2007-11-15 Mount K T Dental implant and method for making and installing same
US7985119B2 (en) 2004-12-23 2011-07-26 Sirona Dental Systems Gmbh Blank for the production of a dental shaped body and method of producing said shaped body
US8673454B2 (en) 2004-12-23 2014-03-18 Sirona Dental Systems Gmbh System for producing a dental-shaped body
US20060141250A1 (en) * 2004-12-23 2006-06-29 Franz Basler Blank for the production of a dental shaped body and method of producing said shaped body
US20060154203A1 (en) * 2005-01-10 2006-07-13 Emanuelli Silvio F Dental implants having anatomical emergence
US20070154868A1 (en) * 2006-01-05 2007-07-05 Scharlack Ronald S Method and system for designing custom restorations for dental implants
US9504541B2 (en) 2006-01-05 2016-11-29 Dentsply International Inc. Method and system for designing custom restorations for dental implants
US8366442B2 (en) 2006-02-15 2013-02-05 Bankruptcy Estate Of Voxelogix Corporation Dental apparatus for radiographic and non-radiographic imaging
US8043091B2 (en) 2006-02-15 2011-10-25 Voxelogix Corporation Computer machined dental tooth system and method
US20070190492A1 (en) * 2006-02-15 2007-08-16 Dental Implant Technologies, Inc. Computer machined dental tooth system and method
US20070190481A1 (en) * 2006-02-15 2007-08-16 Dental Implant Technologies, Inc. Method For Making A Virtual Computer Model of the Jaws
US20080064008A1 (en) * 2006-09-06 2008-03-13 Dental Implant Technologies, Inc. Methods for the virtual design and computer manufacture of intra oral devices
US20080085489A1 (en) * 2006-10-07 2008-04-10 Dental Implant Technologies, Inc. Surgical guides and methods for positioning artificial teeth and dental implants
US7835811B2 (en) 2006-10-07 2010-11-16 Voxelogix Corporation Surgical guides and methods for positioning artificial teeth and dental implants
US20110066267A1 (en) * 2006-10-07 2011-03-17 Schmitt Stephen M Surgical guides and methods for positioning artificial teeth and dental implants
US8364301B2 (en) 2006-10-07 2013-01-29 Bankruptcy Estate Of Voxelogix Corporation Surgical guides and methods for positioning artificial teeth and dental implants
US20080254413A1 (en) * 2006-10-20 2008-10-16 Degudent Gmbh Process for the production of a head piece of a tooth implant and manufacturing kit for such a process
US20080228303A1 (en) * 2007-03-13 2008-09-18 Schmitt Stephen M Direct manufacture of dental and medical devices
US7909607B2 (en) * 2007-10-25 2011-03-22 Pou Yu Biotechnology Co., Ltd. Method for designing a digital abutment for dental implant
US20090111071A1 (en) * 2007-10-25 2009-04-30 Pou Yu Biotechnology Co., Ltd. Method for designing a digital abutment for dental implant
WO2009105790A2 (en) 2008-02-07 2009-08-27 Ivoclar Vivadent, Ag. Dental implant abutment
US8401690B2 (en) 2008-04-03 2013-03-19 Sirona Dental Systems Gmbh Method for machining a blank having an individual scale-up factor and blank therefor
US20110115210A1 (en) * 2008-04-03 2011-05-19 Sirona Dental Systems Gmbh Method for machining a blank having an individual scale-up factor and blank therefor
US8348669B1 (en) 2009-11-04 2013-01-08 Bankruptcy Estate Of Voxelogix Corporation Surgical template and method for positioning dental casts and dental implants
US20110196654A1 (en) * 2010-02-10 2011-08-11 Nobel Biocare Services Ag Dental prosthetics manipulation, selection, and planning
US10314674B2 (en) 2010-02-10 2019-06-11 Nobel Biocare Canada Inc. Dental prosthetics manipulation, selection, and planning
US8949730B2 (en) 2010-07-14 2015-02-03 Biocad Medical, Inc. Library selection in dental prosthesis design
US8712733B2 (en) 2010-09-17 2014-04-29 Biocad Medical, Inc. Adjusting dental prostheses based on soft tissue
US8382477B2 (en) * 2011-04-18 2013-02-26 Terry B. Philibin Healing abutment system for bone contouring
US9925024B2 (en) 2011-06-28 2018-03-27 Biomet 3I, Llc Dental implant and abutment tools
US10952826B2 (en) 2011-06-28 2021-03-23 Biomet 3I, Llc System and method of dental implant and interface to abutment for restoration
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